fa6014a6ec
This is to match the layout of the non-fsp baytrail to make comparisons easier and possibly remove duplicate files. Change-Id: I9a94842d724ab3826de711d398227e7bdc1045ff Signed-off-by: Ben Gardner <gardner.ben@gmail.com> Reviewed-on: https://review.coreboot.org/12686 Tested-by: build bot (Jenkins) Reviewed-by: Alexandru Gagniuc <mr.nuke.me@gmail.com>
177 lines
5.9 KiB
C
177 lines
5.9 KiB
C
/*
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* This file is part of the coreboot project.
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*
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* Copyright (C) 2014 Siemens AG
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; version 2 of the License.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*/
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#include <console/console.h>
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#include "soc/i2c.h"
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#include "ptn3460.h"
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/** \brief This functions sets up the DP2LVDS-converter to be used with the
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* appropriate lcd panel
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* @param lcd_type Type of LCD we should set up the converter for
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* @param *sib Pointer to short info block structure
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* @param *eib Pointer to EDID info block structure
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* @return 0 on success or error code
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*/
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int ptn3460_init(char lcd_type, struct edidinfo *eib, struct shortinfo *sib)
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{
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struct ptn_3460_config cfg;
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int status;
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status = i2c_init(PTN_I2C_CONTROLER);
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if (status)
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return (PTN_BUS_ERROR | status);
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/* If we are here, we have all the desired information for setting up */
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/* DP2LVDS converter. In addition, the information matches the connected */
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/* LCD-panel and therefore, we do not have to distinguish between */
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/* different panels here for the timing. Inside the converter, table 6 */
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/* will be used for the timings. */
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status = ptn3460_write_edid(6, eib->edid);
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if (status)
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return status;
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/* Select this table to be emulated */
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ptn_select_edid(6);
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/* Read PTN configuration data */
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status = i2c_read(PTN_I2C_CONTROLER, PTN_SLAVE_ADR, PTN_CONFIG_OFF,
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(u8*)&cfg, PTN_CONFIG_LEN);
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if (status)
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return (PTN_BUS_ERROR | status);
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/* Set up configuration data according to the information blocks we get */
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cfg.dp_interface_ctrl = 0;
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cfg.lvds_interface_ctrl1 = 0x00;
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if (sib->panelFeatures[SIB_DISP_CON_IDX] == SIB_LVDS_DUAL_LANE)
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cfg.lvds_interface_ctrl1 |= 0x0b; /* Turn on dual LVDS lane and clock */
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if ((sib->panelFeatures[SIB_HWINIT_IDX] & 0x03) == SIB_COLOR_6BIT)
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cfg.lvds_interface_ctrl1 |= 0x20; /* Use 18 bits per pixel */
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cfg.lvds_interface_ctrl2 = 0x03; /* no clock spreading, 300 mV LVDS swing */
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cfg.lvds_interface_ctrl3 = 0x00; /* no LVDS signal swap */
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cfg.t2_delay = 1; /* Delay T2 (VDD to LVDS active) by 16 ms */
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cfg.t3_timing = 5; /* 250 ms from LVDS to backlight active */
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cfg.t12_timing = 20; /* 1 second re-power delay */
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cfg.t4_timing = 3; /* 150 ms backlight off to LVDS inactive */
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cfg.t5_delay = 1; /* Delay T5 (LVDS to VDD inactive) by 16 ms */
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cfg.backlight_ctrl = 0; /* Enable backlight control */
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/* Write back configuration data to PTN3460 */
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status = i2c_write(PTN_I2C_CONTROLER, PTN_SLAVE_ADR, PTN_CONFIG_OFF,
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(u8*)&cfg, PTN_CONFIG_LEN);
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if (status)
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return (PTN_BUS_ERROR | status);
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else
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return PTN_NO_ERROR;
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}
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/** \brief This functions reads one desired EDID data structure from PTN3460
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* @param edid_num Number of EDID that must be read (0..6)
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* @param *data Pointer to a buffer where to store read data
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* @return 0 on success or error code
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*/
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int ptn3460_read_edid(u8 edid_num, u8 *data)
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{
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int status;
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if (edid_num > PTN_MAX_EDID_NUM)
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return PTN_INVALID_EDID;
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/* First enable access to the desired EDID table */
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status = i2c_write(PTN_I2C_CONTROLER, PTN_SLAVE_ADR, PTN_CONFIG_OFF + 5,
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&edid_num, 1);
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if (status)
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return (PTN_BUS_ERROR | status);
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/* Now we can simply read back EDID-data */
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status = i2c_read(PTN_I2C_CONTROLER, PTN_SLAVE_ADR, PTN_EDID_OFF,
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data, PTN_EDID_LEN);
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if (status)
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return (PTN_BUS_ERROR | status);
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else
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return PTN_NO_ERROR;
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}
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/** \brief This functions writes one EDID data structure to PTN3460
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* @param edid_num Number of EDID that must be written (0..6)
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* @param *data Pointer to a buffer where data to write is stored in
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* @return 0 on success or error code
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*/
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int ptn3460_write_edid(u8 edid_num, u8 *data)
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{
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int status;
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if (edid_num > PTN_MAX_EDID_NUM)
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return PTN_INVALID_EDID;
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/* First enable access to the desired EDID table */
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status = i2c_write(PTN_I2C_CONTROLER, PTN_SLAVE_ADR, PTN_CONFIG_OFF + 5,
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&edid_num, 1);
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if (status)
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return (PTN_BUS_ERROR | status);
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/* Now we can simply write EDID-data to ptn3460 */
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status = i2c_write(PTN_I2C_CONTROLER, PTN_SLAVE_ADR, PTN_EDID_OFF,
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data, PTN_EDID_LEN);
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if (status)
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return (PTN_BUS_ERROR | status);
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else
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return PTN_NO_ERROR;
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}
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/** \brief This functions selects one of 7 EDID-tables inside PTN3460
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* which should be emulated on display port and turn emulation ON
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* @param edid_num Number of EDID to emulate (0..6)
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* @return 0 on success or error code
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*/
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int ptn_select_edid (u8 edid_num)
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{
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int status;
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u8 val;
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if (edid_num > PTN_MAX_EDID_NUM)
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return PTN_INVALID_EDID;
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/* Enable emulation of the desired EDID table */
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val = (edid_num << 1) | 1;
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status = i2c_write(PTN_I2C_CONTROLER, PTN_SLAVE_ADR, PTN_CONFIG_OFF + 4,
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&val, 1);
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if (status)
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return (PTN_BUS_ERROR | status);
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else
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return PTN_NO_ERROR;
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}
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/** \brief This functions performs a flash operation which will write
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* current configuration table (all the EDID-tables and the
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* configuration space with a total amount of 1 KByte)
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* to the internal flash of PTN3460
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* @param none
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* @return 0 on success or error code
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*/
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int ptn3460_flash_config(void)
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{
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int status;
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struct ptn_3460_flash flash;
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flash.cmd = 0x01; /* perform erase and flash cycle */
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flash.magic = 0x7845; /* Magic number to protect flash operation */
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flash.trigger = 0x56; /* This value starts flash operation */
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status = i2c_write(PTN_I2C_CONTROLER, PTN_SLAVE_ADR, PTN_FLASH_CFG_OFF,
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(u8*)&flash, PTN_FLASH_CFG_LEN);
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if (status) {
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return (PTN_BUS_ERROR | status);
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} else {
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/* To ensure the flash operation is finished, we have to wait 300 ms */
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mdelay(300);
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return PTN_NO_ERROR;
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}
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}
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